Department of Mechanical Engineering, University of Michigan , 2350 Hayward Street, Ann Arbor, Michigan 48109, United States.
Environ Sci Technol. 2015 Oct 20;49(20):12576-84. doi: 10.1021/acs.est.5b03052. Epub 2015 Oct 7.
This paper examines thermal efficiency penalties and greenhouse gas as well as other pollutant emissions associated with pulverized coal (PC) power plants equipped with postcombustion CO2 capture for carbon sequestration. We find that, depending on the source of heat used to meet the steam requirements in the capture unit, retrofitting a PC power plant that maintains its gross power output (compared to a PC power plant without a capture unit) can cause a drop in plant thermal efficiency of 11.3-22.9%-points. This estimate for efficiency penalty is significantly higher than literature values and corresponds to an increase of about 5.3-7.7 US¢/kWh in the levelized cost of electricity (COE) over the 8.4 US¢/kWh COE value for PC plants without CO2 capture. The results follow from the inclusion of mass and energy feedbacks in PC power plants with CO2 capture into previous analyses, as well as including potential quality considerations for safe and reliable transportation and sequestration of CO2. We conclude that PC power plants with CO2 capture are likely to remain less competitive than natural gas combined cycle (without CO2 capture) and on-shore wind power plants, both from a levelized and marginal COE point of view.
本文考察了配备用于碳封存的燃烧后 CO2 捕集的煤粉(PC)发电厂的热效率损失以及温室气体和其他污染物排放。我们发现,根据用于满足捕集单元蒸汽需求的热源,对保持总发电量(与没有捕集单元的 PC 发电厂相比)的 PC 发电厂进行改造,可能会导致工厂热效率降低 11.3-22.9%-点。这一效率损失的估计值明显高于文献值,相当于在没有 CO2 捕集的 PC 电厂每千瓦时 8.4 美分的平准化成本(COE)基础上,增加了约 5.3-7.7 美分/千瓦时的平准化成本。这一结果源于将 CO2 捕集的 PC 发电厂的质量和能量反馈纳入到之前的分析中,以及考虑了 CO2 安全可靠运输和封存的潜在质量问题。我们得出的结论是,从平准化和边际 COE 的角度来看,配备 CO2 捕集的 PC 发电厂可能仍然不如天然气联合循环(无 CO2 捕集)和陆上风力发电厂具有竞争力。